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Mechanical property degradation of a Nicalon fiber reinforced SiNC ceramic matrix composite under thermal shock loading

机译:Nicalon纤维增强的SiNC陶瓷基复合材料在热冲击载荷下的力学性能下降

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摘要

The degradation of mechanical properties of a SiC fiber reinforced SiNC ceramic matrix composite due to thermal shock by water quenching have been investigated. Post thermal shock tensile tests were performed to determine the degradation of mechanical properties of this composite. In situ acoustic emission (AE) tests were also conducted. The tensile tests data and acoustic emission data were correlated. The AE signal indicated a sudden increase in AE events at critical points in the stress-strain relationship. The effects of thermal shock temperature and the number of thermal shock cycles on the mechanical properties, and on the AE responses were also evaluated. It was observed that an increase in either factor resulted in more AE responses. Fracture damage in the tensile test specimens was examined by Scanning Electron Microscopy. It was observed that the failure mechanism changed as the thermal shock temperature increased. The fracture surfaces of the specimens tested without thermal shock indicated an extensive fiber pullout while the thermally shocked specimens showed reduced fiber pullout.
机译:研究了由于水淬引起的热冲击导致的SiC纤维增强SiNC陶瓷基复合材料力学性能的下降。进行热冲击后拉伸测试以确定该复合材料的机械性能的下降。还进行了原位声发射(AE)测试。拉伸试验数据和声发射数据相关。 AE信号表明在应力-应变关系的关键点处,AE事件突然增加。还评估了热冲击温度和热冲击循环次数对机械性能以及对AE响应的影响。观察到任一因素的增加导致更多的AE响应。通过扫描电子显微镜检查拉伸测试样品中的断裂损伤。观察到破坏机理随着热冲击温度的升高而改变。在没有热冲击的情况下测试的样品的断裂表面表明纤维的广泛拉拔,而热冲击的样品显示纤维的拉拔降低。

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